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Long-term dynamics of monoterpene synthase activities, monoterpene storage pools and emissions in boreal Scots pine

机译:单萜烯合酶活动的长期动态,博尔苏格兰苏格兰松树中的单萜储存池和排放

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Seasonal variations in monoterpene emissions from Scots pine (Pinus sylvestris) are well documented, and emissions are often shown to follow the incident temperatures due to effects on compound volatility. Recent studies have indicated a link between monoterpene emissions and physiological drivers such as photosynthetic capacity during needle development. The complex interplay between the dynamic changes in the biosynthetic capacity to produce monoterpenes and the temperature-dependent evaporation process of volatiles from internal storage reservoirs has not yet been studied under field conditions. In this study, we analysed the relationships between needle monoterpene synthase activities, endogenous monoterpene storage pools and monoterpene emissions of needles in two consecutive years at a boreal forest site in Finland. The results showed changes in the monoterpene synthase activity of needles, linked to seasonality and needle ontogenesis, while the pool of stored monoterpenes (about 0.5% of dry weight) did not change considerably as a function of needle aging. Monoterpene emissions did not correlate directly with enzyme activity or the storage pool size. We observed notably high plant-to-plant variation in the biosynthesis rates of individual monoterpenes, which did not reflect the storage compound mixture. The enzyme activity producing δ-3-carene was only present in the first months after needle flushing, and decreased with needle age, whereas δ-3-carene was abundant in the endogenous monoterpene pool and dominated the needle emissions. This study emphasizes the seasonal, developmental and intraspecific variability of monoterpene biosynthesis and storage, and calls for more in-depth analyses to reveal how such complex interaction affects monoterpene emissions from pine needles in boreal forests.
机译:从苏格兰松树(Pinus Sylvestris)的季节性变化良好地记录,并且通常显示排放,以遵循由于对复合挥发性的影响而引起的入射温度。最近的研究表明了在针开发期间的单萜排放和诸如光合容量的生理驱动因素之间的联系。在现场条件下,尚未研究生物合成能力的动态变化与从内部储存储存器的挥发物的温度依赖性蒸发过程之间的复杂相互作用。在这项研究中,我们在芬兰的北部森林现场连续两年分析了针单萜烯合酶活性,内源性单萜储存池和针织物的单萜排放。结果表明,与季节性和针头形成有关的针头的单萜合酶活性的变化,而储存的单萜(约0.5%的干重)作为针老化的函数没有显着变化。单萜排放并未直接与酶活性或储存池大小相关。我们观察到较高的植物到植物的生物合成率的植物变异,其无单体萜烯的生物合成速率,其没有反映储存复合混合物。产生δ-3-carene的酶活性仅在针冲洗后的第一个月内存在,并且随针年龄降低,而δ-3-肠道在内源单萜池中具有丰富并主导针排放。这项研究强调了单萜生物合成和储存的季节性,发育和可侵入性,并要求更深入的分析来揭示这种复杂的相互作用如何影响北方森林中的松针的单萜排放量。

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